4.8 Article

5-Aza-2′-deoxycytidine-mediated reductions in G9A histone methyltransferase and histone H3K9 di-methylation levels are linked to tumor suppressor gene reactivation

Journal

ONCOGENE
Volume 26, Issue 1, Pages 77-90

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/sj.onc.1209763

Keywords

5-aza-2 '-deoxycytidine; H3K9 methylation; cytosine methylation; tumor suppressor; breast cancer; G9A histone methyltransferase

Funding

  1. NCI NIH HHS [CA65662, R01 CA065662, T32-CA09213] Funding Source: Medline
  2. NIEHS NIH HHS [P30 ES006694, ES007091, T32 ES007091, P30 ES06694] Funding Source: Medline
  3. PHS HHS [P30023074] Funding Source: Medline

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The epigenetic silencing of tumor suppressor genes is a common event during carcinogenesis, and often involves aberrant DNA methylation and histone modi. cation of gene regulatory regions, resulting in the formation of a transcriptionally repressive chromatin state. Two examples include the antimetastatic, tumor suppressor genes, desmocollin 3 (DSC3) and MASPIN, which are frequently silenced in this manner in human breast cancer. Treatment of the breast tumor cell lines MDA-MB-231 and UACC 1179 with 5-aza-20-deoxycytidine (5-aza-CdR) induced transcriptional reactivation of both genes in a dose-dependent manner. Importantly, DSC3 and MASPIN reactivation was closely and consistently linked with significant decreases in promoter H3 K9 di-methylation. Moreover, 5-aza-CdR treatment also resulted in global decreases in H3 K9 di-methylation, an effect that was linked to its ability to mediate dose-dependent, post-transcriptional decreases in the key enzyme responsible for this epigenetic modification, G9A. Finally, small interfering RNA (siRNA)-mediated knockdown of G9A and DNMT1 led to increased MASPIN expression in MDA-MB-231 cells, to levels that were supra-additive, verifying the importance of these enzymes in maintaining multiple layers of epigenetic repression in breast tumor cells. These results highlight an additional, complimentary mechanism of action for 5-aza-CdR in the reactivation of epigenetically silenced genes, in a manner that is independent of its effects on DNA methylation, further supporting an important role for H3 K9 methylation in the aberrant repression of tumor suppressor genes in human cancer.

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